PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Endothelial function”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 739 records · Page 41Linked to original sources

Endothelial function in patients with hyperthyroidism before and after treatment with propranolol and thiamazol.

Hyperthyroidism is associated with a higher incidence of arterial thromboembolism; increasing age, atrial fibrillation, and mitral valve abnormalities are risk factors. However, the contribution of endogenous coagulation parameters is unclear. Because thyroid hormone influences receptor and transcription factors, it can be expected that it will influence proteins involved in coagulation processes synthetised in many cells. Fourteen hyperthyroid patients were studied untreated, after 1 week of treatment with propranolol, and after therapeutic treatment with thiamazol. Fourteen matched controls were used for comparison. On each occasion, endothelial marker proteins, coagulation/fibrinolysis factors, and inflammatory (liver) markers were measured. Excess thyroid hormone was associated with elevated levels of most endothelium-associated proteins. In addition, plasma fibronectin and fibrinogen were increased, while plasminogen was decreased. No evidence was found that hyperthyroidism was associated with coagulation/fibrinolysis activation, or with increased levels of the inflammation markers interleukin-6 (IL-6), tumor necrosis factor-alpha (TNF-alpha) or C-reactive protein (CRP). Propranolol treatment only lowered the von Willebrand factor propeptide, and slightly increased plasminogen. Treatment with thiamazol returned all parameters to normal. Hyperthyroidism increased the plasma levels of most endothelial marker proteins, and of some liver-synthetized proteins. No evidence for coagulation/fibrinolysis activation was found. However, it appears that endothelial activation, which is indicative of a procoagulant state, is present in hyperthyroidism. This may explain the association between hyperthyroidism and thromboembolism especially if other risk factors are present. von Willebrand factor II (vWF:Ag-II) levels may be suitable markers to evaluate acute changes in endothelial function because this parameter responds more rapidly to changes in endothelial function than other factors.

Adrenergic beta-Antagonists↗

Paraoxonase-1 activity modulates endothelial function in patients with peripheral arterial disease.

Human serum paraoxonase-1 (PON1) is thought to play a role in the favorable vascular effects of high-density lipoproteins, mainly through a reduction in low-density lipoprotein oxidation. Endothelial dysfunction, characterized by an impaired capacity of the arteries to dilate in response to a number of stimuli, represents the earliest stage of atherosclerosis. We performed the present study in 37 patients with peripheral arterial disease, with the aim of investigating the influence of PON1 Q192R polymorphism and activity on peripheral endothelial function, evaluated as brachial-artery flow-mediated vasodilation (FMV). Patients with the R allele (QR or RR genotype, n=19) had significantly higher PON1 activity [408 U/mL (309-456) versus 180 U/mL (141-243), p<0.001] and greater brachial FMV (5.7+/-3.9% versus 3.0+/-2.8%, p<0.001) than those with Q allele (QQ genotype, n=18). In the whole population, PON1 activity showed a direct relation to brachial FMV (r=0.46, p=0.004). In a multivariate linear regression analysis, the only independent predictors of brachial FMV were PON1 activity (beta=0.40, p=0.008), brachial-artery diameter (beta=-0.39, p=0.01) and male sex (beta=-0.27, p=0.04). These finding support the importance of PON1 activity as a modulating factor of the endothelial function.

Aged↗

Differential effects of oral conjugated equine estrogen and transdermal estrogen on atherosclerotic vascular disease risk markers and endothelial function in healthy postmenopausal women.

BACKGROUND: Recent studies have revealed that HRT may increase the risk for atherosclerotic vascular disease (ASVD). METHODS: We investigated the effects of HRT via different administration routes on the markers for ASVD and endothelial function in healthy postmenopausal women. The oral HRT group (n=18) received conjugated equine estrogen 0.625 mg/day; the transdermal HRT group (n=18) received 17beta-estradiol (E2) gel 0.6 mg/day for 6 months. The control group (n=30) had no treatment for 6 months. RESULTS: The C-reactive protein (CRP) rose from 0.129+/-0.116 to 0.752+/-0.794 mg/dl (P<0.01) in the oral HRT group but remained unchanged in the transdermal HRT and control groups. The flow-mediated vasodilation (FMD) in the brachial artery was increased significantly by HRT from 6.0% before oral HRT to 14.7% after oral HRT (P<0.001) and from 5.9% before transdermal HRT to 13.9% after transdermal HRT (P=0.001). CONCLUSIONS: These data suggest that oral estrogen induces ASVD risk by increasing acute inflammation; however, transdermal estrogen avoids this untoward effect. Additionally, transdermal estrogen exerts a positive effect on endothelial function similar to that of oral estrogen. Therefore, the transdermal route might be favourable in terms of ASVD risks.

Administration, Oral↗

Altered coronary endothelial function in a patient with asymptomatic left ventricular dysfunction.

Coronary endothelial dysfunction has been demonstrated in patients with symptomatic heart failure. Furthermore the endothelium has been implicated in the pathogensis of cardiomyopathy in patients with normal coronary angiograms and no other known causes of heart failure. Herein we describe an asymptomatic patient with an early cardiomyopathy and abnormal coronary endothelial function. There was no evidence for coronary disease by both angiography and intravascular ultrasound. Epicardial coronary artery vasoconstriction and a decrease in coronary blood flow was noted during the intracoronary infusion of graded concentrations of acetylcholine. This case demonstrates that endothelial dysfunction occurs in the setting of asymptomatic left ventricular dysfunction and highlights the potential importance of the endothelium in the early development of heart failure.

Acetylcholine↗

Effects of insulin lispro and chronic vitamin C therapy on postprandial lipaemia, oxidative stress and endothelial function in patients with type 2 diabetes mellitus.

BACKGROUND: Insulin therapy may influence cardiovascular disease (CVD) and lipid metabolism in type 2 diabetes (T2D). Exaggerated postprandial lipaemia (PPL) is a feature of diabetic dyslipidaemia affecting CVD via enhanced oxidative stress (OS) and endothelial dysfunction. We assessed endothelial function and OS during PPL following insulin and vitamin C. Twenty (17 M) T2D patients were studied (mean Hba1c 8.4%) at baseline, following 6 weeks of insulin lispro (0.2 Iu kg-1) and vitamin C 1-g daily. Eight-h lipid and glucose profiles were measured following a fatty meal. Endothelial function (flow-mediated vasodilatation: FMD) and OS were measured at fasting, 4 h and 8 h. MATERIALS AND METHODS: Glucose, body mass index, and total and LDL cholesterol remained unchanged. FMD improved. Placebo group: fasting, 1.1 +/- 1.2 to 4.2 +/- 1.1% (P < 0.001); 4-h, 0.3 +/- 1.2 to 3.1 +/- 0.9% (P < 0.01); 8-h, 0.7 +/- 1.1 to 3.76 +/- 1.1% (P < 0.001). Vitamin C group: fasting, 0.9 +/- 1.1 to 6.1 +/- 1.3% (P < 0.001); 4-h, 0.7 +/- 1.5 to 4.9 +/- 2.1% (P < 0.001); 8-h, 0.8 +/- 0.9 to 5.8 +/- 0.6% (P < 0.01). Post-prandial lipaemia was attenuated: TG area-under-curve (mmol L-1 8 h-1), 52.6 +/- 11 to 39.1 +/- 12.5 (placebo group), P < 0.02; and 56.9 +/- 8 to 40.1 +/- 10.3 (vitamin C group), P < 0.02. Oxidative stress was reduced, with greater changes in the vitamin C group. CONCLUSION: Insulin may thus exert vascular benefits in T2D, by modifying fasting and postprandial lipid metabolism resulting in reduced OS and improved EF. Vitamin C therapy may augment the vascular benefits of insulin in T2D through additional effects on OS and EF.

Adult↗

Soluble vascular endothelial growth factor, soluble VEGF receptor Flt-1 and endothelial function in healthy smokers.

OBJECTIVE: To relate levels of vascular endothelial growth factor (VEGF) and its soluble receptor, sFlt-1, with endothelial function in healthy smokers. METHODS: Plasma levels of VEGF and sFlt-1 were measured by ELISA in 22 healthy smokers and 22 matched healthy non-smoking controls, and compared to flow- (FMD) and acetylcholine-mediated (AMD) vasodilatation (endothelial-dependent) (EDV) and nitroglycerine-mediated (NMD) vasodilatation (endothelial-independent) of lower extremities were measured with plethysmography. RESULTS: Smokers and controls had similar plasma VEGF levels, but sFlt-1 levels were lower in smokers than in controls (p<0.01). AMD was lower in smokers compared to controls (p<0.05), but FMD and NMD levels were similar. Smokers and controls with high AMD (>12 ml/100 ml tissue/min) had significantly lower plasma VEGF levels (p<0.001). An inverse correlation was found in both groups, between VEGF and AMD (smokers: r=-0.6, p<0.01; controls: r=-0.71, p<0.005) and with FMD (smokers: r=-0.56, p<0.05; controls: r=-0.58, p<0.005). There were no significant correlations between sFlt-1 with VEGF levels or endothelial-dependent dilatation. CONCLUSION: In conclusion, healthy smokers demonstrate abnormal AMD, and an inverse correlation between plasma VEGF levels (but not sFlt-1) with indices of endothelial dysfunction (FMD and AMD) exists. VEGF, and not sFlt-1, may be related to the pathogenesis of endothelial dysfunction in healthy smoking individuals.

Adult↗

Antihypertensive therapy and endothelial function.

The benefits of treating hypertension in terms of reduction of morbidity and mortality are well established. However, it is debatable whether this benefit is derived entirely from the effects of a reduced blood pressure or whether these agents exert effects over and above blood pressure reduction on the endothelium. Hypertension is associated with adverse changes (whether damage or dysfunction) in the endothelium. Indeed, endothelial damage/dysfunction has have been demonstrated to be a reliable prognostic indicator of future cardiovascular events in hypertension. Of the various drug classes, calcium channel blockers and the ACE inhibitors have significant direct effects on the endothelium. This is in contrast to the beta blockers and alpha adrenergic blockers that appear to indirectly influence endothelial function solely as a result of lowered blood pressure. Antioxidants may have a beneficial effect on endothelial function as well, although their clinical use does not seem to translate into clinical benefit.

Adrenergic alpha-Antagonists↗

Beta-lactam antibiotic-mediated changes in platelet reactivity and vascular endothelial functions.

To evaluate vascular and platelet compatibility of intravenous administration of beta-lactam antibiotics, we assessed the effects of therapeutic concentrations of ceftriaxone, aztreonam, and ceftazidime on platelet reactivity to different agonists (sodium arachidonate, collagen and adenosine diphosphate) and on selected vascular endothelial functions (adenosine diphosphatase activity, prostacyclin production and t-PA release). Ceftriaxone and, to a lesser degree, aztreonam, enhanced platelet reactivity, evaluated as onset of platelet aggregating response, and increased thromboxane production to subthreshold concentrations of arachidonate. There was no modification in platelet reactivity after ceftazidime treatment. Ceftriaxone and ceftazidime, but not aztreonam, inhibited endothelial adenosine diphosphatase activity. Prostacyclin production and t-PA release were inhibited only by ceftriaxone at high concentrations. While it is difficult to establish which marker (platelet or endothelial functions) has more clinical reference in human vascular compatibility, it seems feasible to consider aztreonam the most compatible of the beta-lactams studied.

Adenosine Diphosphate↗

Pathophysiological implications of insulin resistance on vascular endothelial function.

BACKGROUND: Insulin resistance is a key component of the insulin resistance syndrome and is a crucially important metabolic abnormality in Type 2 diabetes. Insulin-resistant individuals are at significantly increased risk of cardiovascular disease, although the underlying mechanisms remain incompletely understood. The endothelium is thought to play a critical role in maintaining vascular homeostasis, a process dependent on the balance between the production of nitric oxide, superoxide and other vasoactive substances. Endothelial dysfunction has been demonstrated in insulin-resistant states in animals and humans and may represent an important early event in the development of atherosclerosis. Insulin resistance may be linked to endothelial dysfunction by a number of mechanisms, including disturbances of subcellular signalling pathways common to both insulin action and nitric oxide production. Other potential unifying links include the roles of oxidant stress, endothelin, the renin angiotensin system and the secretion of hormones and cytokines by adipose tissue. Lifestyle measures and drug therapies which improve insulin sensitivity and ameliorate endothelial dysfunction may be important in delaying the progression to overt cardiovascular disease in at risk individuals. METHODS: We conducted a literature search using Medline, restricted to articles published in the English language between 1966 and the present, and reviewed bibliographies of relevant articles. An initial search strategy employing combinations of the MeSH terms: insulin resistance; endothelium, vascular; insulin; nitric oxide or hyperinsulinaemia produced over 300 references. Focused searches using keywords relevant to the molecular aspects of endothelial function and insulin signalling, and lifestyle or pharmacological interventions relevant to insulin resistance or endothelial function, produced over 300 further references. Abstracts of all references were screened before selecting those relevant to this review.

Arteriosclerosis↗

[Endothelial function].

The endothelium is the first line of tissue whose function is affected by the cardiovascular risk factors. The normal function of this vascular covering maintains the homeostasis of the vascular bed and its alterations favors the appearance of the initial lesions of various diseases including the atherosclerotic process. The endothelial function can be measured by means of non invasive methods and these measures can identify the people at higher risk to develop atherosclerosis and its complications and also the methodology has proven to be useful in the evaluation of the outcomes related to the therapeutic measures. The possibility of performing this methods in a safe, non invasive and reproducible way permits that the endothelial function could be used as screening tool for cardiovascular risk in open population.

Coronary Vessels↗

Normal endothelial function despite insulin resistance in healthy women with the polycystic ovary syndrome.

Women with the polycystic ovarian syndrome (PCOS) carry a number of cardiovascular risk factors, including insulin resistance, lipid abnormalities, and an altered pattern of sex steroid exposure. Noninvasive measurements of endothelial function, which can demonstrate abnormalities well in advance of clinically apparent disease, have not been previously reported in this patient group. We undertook a cross-sectional evaluation of endothelium-dependent and -independent vascular function using brachial artery ultrasound. We studied healthy women with clinical and laboratory evidence of PCOS (n = 18) and age-matched controls (n = 19), not taking any antihypertensive, cholesterol-lowering, or hormonal therapies. Laboratory parameters of insulin resistance, glycemia, cholesterol status, and hormone levels were also measured. Despite marked differences in glucose/insulin ratio [6.1 +/- 1.1 mmol/pmol (PCOS) vs. 9.9 +/- 0.6 (controls)] and free androgen index [11.9 +/- 2.3 (PCOS) vs. 3.7 +/- 0.6 (controls); normal, <5], we did not find evidence of impaired endothelial function in our patients with PCOS. Both endothelium-dependent (8.7 +/- 3.1%) and endothelium-independent (23.2 +/- 3.4%) vascular responses were normal, and practically identical to the responses seen in the control group (endothelium-dependent, 9.0 +/- 0.7; endothelium-independent, 23.0 +/- 1.2%). The PCOS women were more obese, but baseline brachial arterial diameters were not different between groups. There was no correlation between degree of insulin resistance or hyperandrogenism and the brachial response. This group of healthy obese young women with insulin resistance and hyperandrogenism due to PCOS had normal endothelium-dependent and -independent vascular responses compared to age-matched controls. The factors resulting in preservation of these response are unclear and warrant further investigation.

Adult↗

Endothelial function and inflammation in coronary artery disease.

Evidence supports the central role of endothelium and inflammation in all phases of the atherosclerotic process. Clinical studies have shown their prognostic potential for the development of ischaemic events and for adverse outcome after acute coronary syndromes. Reduction in inflammatory levels and improving endothelial function by traditional and novel treatment strategies were associated with a proportional reduction in cardiovascular events. However, randomised controlled trials are required to explore further whether drugs targeting the inflammatory process and endothelial function will constitute a reasonable adjunctive treatment for patients with coronary artery disease.

Biomarkers↗

The effects of troglitazone, an insulin-sensitizing agent, on the endothelial function in early and late type 2 diabetes: a placebo-controlled randomized clinical trial.

Activation of the peroxisome proliferator-activator receptor gamma (PPARgamma) improves insulin resistance and glycemic control in patients with diabetes. As PPARgamma is expressed in the endothelial cell, we have investigated the effect of troglitazone, a PPARgamma activator, on the endothelial function in people with type 2 diabetes in a 12-week, prospective, randomized, double-blinded clinical trial. We studied 87 type 2 diabetic patients who were divided into 3 groups. Group A consisted of 27 patients with recently diagnosed diabetes and no clinical manifestations of macrovascular disease; group B, 29 patients with long-term diabetes and no clinically evident macrovascular disease; and group C, 31 diabetic patients with documented macrovascular disease (cardiovascular, cerebrovascular, or peripheral vascular disease). High-resolution ultrasound images were used to measure the flow-mediated dilation (FMD, endothelium-dependent) and nitroglycerin-induced dilation (NID, endothelium-independent) in the brachial artery. Laser Doppler perfusion imaging was used to measure vasodilation in the forearm skin in response to iontophoresis of 1% acetylcholine (Ach, endothelium-dependent) and 1% sodium nitroprusside (NaNP, endothelium-independent). The plasma concentrations of von Willebrand factor (vWF), soluble intercellular adhesion molecule (sICAM), and soluble vascular cell adhesion molecule (sVCAM) were also measured as indicators of endothelial cell activation. The FMD improved in the troglitazone-treated patients in group A (7.72 +/- 3.4 v 5.27 +/- 2.0, P <.05 [exit visit v baseline, percent of increase in brachial artery diameter, mean +/- SD]). The fasting insulin level also improved in this group (15.6 +/- 10 v 19.7 +/- 10, P <.05) and was strongly correlated to changes in FMD (r = -.73, P <.01). No changes were found in the FMD or the fasting insulin levels in the troglitazone-treated patients in groups B or C. The NID was not changed by troglitazone treatment in any of the 3 groups. Also, no differences were found in the microcirculation reactivity measurements or in the biochemical markers of endothelial dysfunction in all 3 groups. A small, but significant, improvement of the FMD was found in placebo-treated patients in group B, probably related to the low FMD levels at baseline in the patients (5.40 +/- 3.0 v 4.36 +/- 2.4, P <.05). We concluded that troglitazone treatment for 12 weeks improved endothelial function in the macrocirculation of patients with recently diagnosed type 2 diabetes and no clinical evidence of macrovascular disease. This improvement was strongly associated with the improvement of fasting plasma insulin concentrations.

Chromans↗

Dehydroepiandrosterone supplementation improves endothelial function and insulin sensitivity in men.

The dehydroepiandrosterone (DHEA) concentration decreases with age. There is evidence that DHEA has a protective effect against age-related disorders, including cardiovascular disease. Accordingly, we examined the effect of DHEA supplementation (25 mg/d) on endothelial function, insulin sensitivity, and fibrinolytic activity in 24 men with hypercholesterolemia (mean age, 54 +/- 1 yr). All subjects were enrolled in a randomized, double-blind study. Flow-mediated dilation of brachial artery after transient occlusion, which was expressed as the percent change from the baseline value of the diameter, increased significantly with DHEA supplementation [DHEA: baseline, 3.9 +/- 0.5%; 4 wk, 6.9 +/- 0.7%; 8 wk, 7.9 +/- 0.6%; 12 wk, 8.4 +/- 0.7% (P < 0.01 vs. baseline for all, by ANOVA); placebo: 4.1 +/- 0.6%, 4.5 +/- 0.5%, 3.9 +/- 0.5%, and 4.4 +/- 0.6% (P < 0.01 for all, by ANOVA)]. There was a significant concurrent reduction in the plasma levels of plasminogen activator inhibitor type 1 during DHEA supplementation [DHEA: 9.1 +/- 2.2, 6.4 +/- 2.3, 5.5 +/- 2.8, and 5.1 +/- 2.0 IU/ml (P < 0.01 vs. baseline, by ANOVA); placebo: 9.0 +/- 2.1, 10.4 +/- 2.2, 9.5 +/- 2.2, and 9.6 +/- 2.1 IU/ml (P < 0.01, by ANOVA)]. DHEA supplementation also decreased steady state plasma glucose [DHEA: baseline, 178.9 +/- 12.2; 12 wk, 132.0 +/- 12.8 mg/dl (P < 0.01, by ANOVA); placebo: 181.0 +/- 13.8 and 179.6 +/- 12.4 mg/dl (P < 0.01, by ANOVA)]. In contrast, steady state plasma insulin did not change during the study in either group. The low dose DHEA supplementation improves vascular endothelial function and insulin sensitivity and decreases the plasminogen activator inhibitor type 1 concentration. These beneficial changes have the potential to attenuate the development of age-related disorders such as cardiovascular disease.

Adjuvants, Immunologic↗

Reduction of peripheral flow reserve impairs endothelial function in conduit arteries of patients with essential hypertension.

BACKGROUND: A diminished flow reserve in resistance vessels is a hallmark of hypertensive microvascular disease. Hypertension is associated with structural alterations in the microcirculation and a reduced endothelium-dependent dilation in conduit arteries. Both have been demonstrated to predict future cardiovascular events. OBJECTIVE: We hypothesized that a reduced peripheral flow reserve impairs endothelial function in upstream conduit arteries in patients with arterial hypertension. DESIGN: In 43 hypertensive patients (HT) and 38 normotensive controls (NT) endothelial function of the brachial artery was assessed by measurement of flow-mediated dilatation (FMD), using high-resolution ultrasound. Peripheral flow reserve (FR) was determined via measurements of forearm blood flow at rest and during increments of reactive hyperaemia, using venous occlusion plethysmography. RESULTS: FMD was markedly impaired in HT (3.6 +/- 0.3%) as compared with NT (10.2 +/- 0.3%), whereas maximum brachial artery diameter following endothelium-independent dilatation was similar in both groups. In hypertensive patients FR was significantly reduced (HT, 3.2 versus NT, 6.0) during reactive hyperaemia after 5 min of ischaemia. FR was associated with FMD (r = 0.68, P < 0.01). Multiple stepwise regression analysis identified FR as a strong independent variable determining the extent of FMD (r2 = 0.46, P < 0.01). In HT the dose-response curve of FMD upon stepwise increases of FR was shifted significantly to the right. Normalization of FR improved FMD in HT by more than 60%. CONCLUSIONS: In essential hypertension a reduced FR contributes to the endothelial dysfunction of upstream conduit arteries. These findings may have therapeutic and prognostic implications in patients with arterial hypertension.

Adult↗

Soy isoflavones improve endothelial function in spontaneously hypertensive rats in an estrogen-independent manner: role of nitric-oxide synthase, superoxide, and cyclooxygenase metabolites.

The aim of this study was to analyze the effects of the isoflavones genistein and daidzein, and the mammalian estrogen 17beta-estradiol on endothelial function in isolated aortic rings from male spontaneously hypertensive rats (SHR) and Wistar Kyoto rats (WKY). Relaxation to acetylcholine on precontracted rings was impaired and endothelium-dependent contraction to acetylcholine in aortic rings was increased in SHR compared with WKY. Aortic NADPH-stimulated O(2)(-) release and prostaglandin (PG)H(2) production evoked by acetylcholine were increased, whereas nitric-oxide synthase activity was reduced in SHR versus WKY. Genistein, daidzein, or 17beta-estradiol enhanced the relaxant response to acetylcholine and decreased the endothelium-dependent vasoconstrictor responses to acetylcholine in SHR, but not in WKY, and these effects were not modified by the estrogen receptor antagonist ICI 182,780 (7alpha,17beta-[9[(4,4,5,5,5-pentafluoropentyl)-sulfinyl]nonyl]estra-1,3,5(10)-triene-3,17-diol). Moreover, isoflavones enhanced nitric-oxide (NO) synthase activity and inhibited NADPH-stimulated O(2)(-) roduction and endothelial release of PGH(2). The contractions induced by the TP receptor agonist U46619 (9,11-dideoxy-11alpha,9alpha-epoxymethanoprostaglandin F(2alpha)) in denuded aortic rings were inhibited by genistein, daidzein, and 17beta-estradiol in both strains. In conclusion, the isoflavones genistein and daidzein and 17beta-estradiol restore endothelial function in male SHR through estrogen receptor-independent mechanisms. Increased NO production and protection of NO from O(2)(-)-driven inactivation might be involved in the improvement of vascular relaxation to acetylcholine in aortic rings from SHR. Moreover, isoflavones and 17beta-estradiol inhibited aortic endothelium-dependent contraction to acetylcholine in SHR by reducing the endothelial PGH(2) release and its vasoconstrictor response.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Acute inflammatory state during influenza infection and endothelial function.

Chronic inflammatory stimulus seems to contribute to atherosclerotic process. Several studies have established a relationship between infective agents as Chlamydia pneumoniae, herpes virus and cytomegalovirus and atherosclerotic lesions. Aim of this study was to investigate the effects of influenza infective state on endothelial function of healthy young subjects, expressed as brachial flow-mediated vasodilation (FMV) and soluble form of intercellular adhesion molecule-1 (sICAM-1) and vascular cell adhesion molecule-1 (sVCAM-1). In 10 male subjects (mean age 35+/-14 years) exhibiting influenza symptoms for 3 days, we determined total cholesterol, high-density lipoproteins (HDL), low-density lipoproteins (LDL), triglycerides, sVCAM-1, sICAM-1 and brachial FMV. All subjects had an antibody pattern characteristic of influenza A or B virus infection. After 3 months brachial FMV was significantly increased (8.6+/-2.3% versus 11.5+/-3.2%; p<0.001), while HDL (46+/-10 mg/dL versus 49+/-9 mg/dL; p<0.05), sICAM-1 and sVCAM-1 were reduced (respectively: 488+/-105 ng/mL versus 340+/-127 ng/mL; p<0.001, 1710+/-80 ng/mL versus 1216+/-63 ng/mL; p<0.001). Univariate analysis showed a positive correlation between changes in CRP and sICAM-1 levels (r=0.95, p<0.001), a negative one between changes in sICAM-1 and brachial FMV (r=-0.65, p<0.05) and between CRP and brachial FMV (r=-0.64, p<0.05). This small study suggested that inflammatory state determined by viral agents may transitorily alter endothelial function in healthy subjects.

Acute Disease↗

Hormone replacement therapy and endothelial function. Results of a randomized controlled trial in healthy postmenopausal women.

OBJECTIVE: To compare the effects of 3 months treatment with tibolone (a single entity synthetic steroid hormone with estrogenic, progestanic and androgenic activities), or continuous combined conjugated equine estrogens (CEE) plus medroxyprogesterone acetate (MPA), with placebo, on endothelial function. DESIGN: A single center, randomized, double-blind, placebo-controlled study. SETTING: Research center as part of the University Medical Center Utrecht. SUBJECTS: One hundred and five healthy postmenopausal women, sampled from the general population. INTERVENTIONS: Three months treatment with tibolone or CEE+MPA or placebo. MAIN OUTCOME MEASURE: At baseline and after 3 months, endothelial function was assessed non-invasively by measuring percent lumen diameter change in the brachial artery after reactive hyperemia and sublingual nitroglycerine spray. RESULTS: Results are presented as mean differences between treatment groups of endothelium dependent flow mediated dilatation (fmd) and endothelium independent nitroglycerine induced dilatation with 95% confidence intervals (95% CI). After treatment, there was a significant difference in mean fmd between the CEE+MPA group and the placebo group of 2.5% (95% CI: 0.3-4.6) while the tibolone group and the placebo group did not differ significantly (0.6%; 95% CI: 1.6-2.8). Nitroglycerine induced dilatation did not differ significantly between the groups. CONCLUSIONS: Hormone replacement therapy with CEE+MPA for 3 months increases endothelium dependent fmd of the brachial artery in healthy postmenopausal women. Tibolone did not alter fmd. The clinical significance of this improvement in fmd for cardiovascular disease risk needs to be established.

Aged↗